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Clouds Can Reveal Shape of Continents

Clouds Can Reveal Shape of Continents

NASA's Earth Observatory, November 17, 2009
Clouds Can Reveal Shape of Continents
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download large image (5 MB, PNG) acquired October 1-31, 2009

In some parts of the world the difference in the amount of clouds over land versus ocean is so stark that the outlines of continents and other landmasses can be traced through observations of clouds alone. This image of October 2009’s cloud fraction (the fraction of an area covered by clouds) demonstrates the pattern. The measurements were collected by the Moderate Resolution Imaging Spectroradiometer (MODIS) on NASA’s Terra satellite. Colors range from blue (no clouds) to white (totally cloudy).

Not surprisingly, the most dramatic cloud boundaries occur in places where very dry land is surrounded by ocean, such as northern and southern Africa, the Arabian Peninsula (east of North Africa), and Greenland. The sharp boundary between water and land fades over humid regions. In west-central Africa, the contour of the coastline fades beneath clouds that are nearly as prevalent over the humid tropical forests as they are over the Atlantic Ocean to the west.

Over the islands, narrow peninsulas, and shallow seas between Southeast Asia and Australia, the difference between land and water virtually disappears; the entire region is extremely cloudy, and the outlines of the major land masses—including the Indonesia islands of Sumatra and Borneo are barely perceptible. This blurring of boundaries is reflected in the name meteorologists give this region: the Maritime Continent.

In addition to their role as rain- and snow-makers, clouds are often the arbiters of energy entering and leaving the climate system. Clouds may have a warming or cooling influence depending on their altitude, type, and when they form. Clouds reflect sunlight back into space, which causes cooling. But they can also absorb heat that radiates from the Earth’s surface, preventing it from freely escaping to space. The diversity of roles clouds can play makes daily, global observations vital to understanding and predicting our climate.
NASA Earth Observatory image by Kevin Ward, based on data provided by the NASA Earth Observations (NEO) Project. Caption by Rebecca Lindsey. Instrument: Terra - MODIS
Link:  http://earthobservatory.nasa.gov/IOTD/view.php?id=41292

A.C. Clement, R. Burgman, J.R. Norris, Science, 325 (24 July 2009), Observational and Model Evidence for Positive Low-Level Cloud Feedback

Science, Vol. 325, No. 5939, 460-464 (24 July 2009); DOI: 10.1126/science.1171255

Observational and Model Evidence for Positive Low-Level Cloud Feedback

Amy C. Clement,1,* Robert Burgman,1 and Joel R. Norris2

Abstract

Feedbacks involving low-level clouds remain a primary cause of uncertainty in global climate model projections. This issue was addressed by examining changes in low-level clouds over the Northeast Pacific in observations and climate models. Decadal fluctuations were identified in multiple, independent cloud data sets, and changes in cloud cover appeared to be linked to changes in both local temperature structure and large-scale circulation. This observational analysis further indicated that clouds act as a positive feedback in this region on decadal time scales. The observed relationships between cloud cover and regional meteorological conditions provide a more complete way of testing the realism of the cloud simulation in current-generation climate models. The only model that passed this test simulated a reduction in cloud cover over much of the Pacific when greenhouse gases were increased, providing modeling evidence for a positive low-level cloud feedback.

1 Rosenstiel School of Marine and Atmospheric Sciences, University of Miami, Division of Meteorology and Physical Oceanography, MSC 362, 4600 Rickenbacker Causeway, Miami, FL 33149, U.S.A.
2 Scripps Institution of Oceanography, University of California-San Diego, La Jolla, CA 92093–0224, U.S.A.

*Correspondence, e-mail: aclement@rsmas.miami.edu

Link to abstract: http://www.sciencemag.org/cgi/content/abstract/325/5939/460

Richard A. Kerr, Science, 325 (24 July 2009), Clouds Appear to Be Big, Bad Player in Global Warming

Science, Vol. 325, No. 5939, 376 (24 July 2009); DOI: 10.1126/science.325_376

News of the Week

Climate Change:

Clouds Appear to Be Big, Bad Player in Global Warming

Richard A. Kerr

The first reliable analysis of cloud behavior over past decades suggests—but falls short of proving—that clouds are strongly amplifying global warming. If that's true, then almost all climate models have got it wrong. On page 460, climate researchers consider the two best, long-term records of cloud behavior over a rectangle of ocean that nearly spans the subtropics between Hawaii and Mexico. In a warming episode that started around 1976, ship-based data showed that cloud cover—especially low-altitude cloud layers—decreased in the study area as ocean temperatures rose and atmospheric pressure fell. One interpretation, the researchers say, is that the warming ocean was transferring heat to the overlying atmosphere, thinning out the low-lying clouds to let in more sunlight that further warmed the ocean. That's a positive or amplifying feedback. During a cooling event in the late 1990s, both data sets recorded just the opposite changes—exactly what would happen if the same amplifying process were operating in reverse.

Link to article: http://www.sciencemag.org/cgi/content/short/325/5939/376